A shock-proof hammer for power lines
By integrating controllers, mobile devices and other sensor systems on the shock-proof hammer, the problem that the shock-proof hammer cannot adjust its position after installation is solved, and flexible adaptation and stable operation of the power lines are achieved.
Patent Information
- Application Number
- CN201911226870.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2019-12-04
- Publication Date
- 2025-05-16
- Estimated Expiration
- 2039-12-04
AI Technical Summary
The existing shock-proof hammer cannot be adjusted after installation, resulting in the inability to effectively adapt to the needs of different power lines.
A shock-proof hammer for power lines is designed, equipped with a controller, a moving device, a balance adjustment device, a weight detection sensor and a control system, allowing the position and weight of the shock-proof hammer to be adjusted after installation.
It realizes flexible adjustment of shock-proof hammers on power lines, improves the adaptability and use efficiency of equipment, and ensures the stable operation of power lines.
Smart Images

Figure CN110829333B_ABST
Abstract
Description
Technical Field
[0001] The invention belongs to the technical field of electric power and relates to an anti-vibration hammer for a power line. Background Art
[0002] The anti-vibration hammer is designed to reduce the vibration of the conductor caused by wind. The pole position of the high-voltage overhead line is high and the span is large. When the conductor is affected by wind, it will vibrate. When the conductor vibrates, the working conditions at the place where the conductor is suspended are the most unfavorable. Due to multiple vibrations, the conductor will suffer fatigue damage due to periodic bending. When the span of the overhead line is greater than 120 meters, an anti-vibration hammer is generally used to prevent vibration.
[0003] The installation method of the shock-absorbing hammer in the prior art is to fix the hammer on the high-voltage overhead line by screws. After the installation process, the position of the shock-absorbing hammer on the high-voltage overhead line cannot be adjusted. Summary of the invention
[0004] In order to solve the above problems, the present invention provides a shockproof hammer for power lines, which is equipped with a controller, and can adjust the position of the shockproof hammer on the power line after the shockproof hammer is installed. And the shockproof hammer can be placed with heavy objects to adjust the weight of the shockproof hammer.
[0005] The present invention provides an anti-shock hammer for a power line, comprising an anti-shock hammer body, a controller, a moving device, a balance adjustment device, a weight detection sensor and a control system, wherein the controller is mounted on the anti-shock hammer body, the moving device is mounted on the top of the anti-shock hammer body, the balance adjustment device is mounted on both sides of the anti-shock hammer, the anti-shock hammer body is provided with a load slot, the weight detection sensor is mounted in the load slot, and the control system is remotely controlled by the controller.
[0006] The controller further includes a signal detection module, a digital quantity control module and a communication module. The signal detection module is connected to the balance adjustment device and the weight detection sensor via a connecting line. The digital quantity control module is connected to the balance adjustment device and the adjustment device via a connecting line. The communication module has a communication function and communicates remotely with the control system.
[0007] Furthermore, the control system has a communication module and an operation panel, wherein the communication module can communicate remotely with the controller, and the operation panel can set parameter values.
[0008] The moving device further includes an upper shell, a lower shell, a rotating motor, a rotating wheel and a clamping device. The upper shell and the lower shell are connected by a rotating shaft and a fixed buckle. There is a concave hole on the side between the upper shell and the lower shell. The rotating motor is installed on the rotating wheel. The side of the rotating wheel has a threaded groove, and the threaded groove is fixed on the upper side of the concave hole. The clamping device is installed on the lower side of the concave hole.
[0009] Furthermore, the rotating motor includes a power input port, and the power input port is connected to the digital quantity control module of the controller through a connecting line.
[0010] Further, the clamping device includes an electromagnetic device and a clamping rod, the clamping rod is installed in the electromagnetic device, and the electromagnetic device includes a power input port, which is connected to the digital control module of the controller through a connecting line.
[0011] Furthermore, the weight detection sensor includes a detection port, and the detection port is connected to a signal detection module of the controller via a connecting line.
[0012] Furthermore, the balance adjustment device includes a balance detection sensor and two adjustment devices, the two electromagnetic adjustment devices are installed at both ends of the shock-absorbing hammer body, the balance detection sensor is installed on the adjustment device, and includes a signal detection port, and the signal detection port is connected to the signal detection module of the controller through a connecting line.
[0013] The adjusting device further comprises an electromagnetic rotating device, a rotating rod and a load. The electromagnetic rotating device is installed on the shockproof hammer, one end of the rotating rod is installed in the electromagnetic rotating device, and the other end of the rotating rod is equipped with the load. BRIEF DESCRIPTION OF THE DRAWINGS
[0014] Figure 1 The overall structural diagram of an anti-vibration hammer for power lines is invented;
[0015] Figure 2 A schematic diagram of the structure of a mobile device for inventing a shock-proof hammer for power lines;
[0016] Figure 3 The invention provides a structural schematic diagram of a balance adjustment device for a shock-absorbing hammer for a power line.
[0017] In the figure: 1. shock-proof hammer body; 2. controller; 3. moving device; 4. balance adjustment device; 5. weight detection sensor; 6. control system; 7. upper shell; 8. lower shell; 9. rotating motor; 10. rotating wheel; 11. clamping device; 12. balance detection sensor; 13. electromagnetic rotating device; 14. rotating rod; 15. load. DETAILED DESCRIPTION
[0018] The specific implementation method of the shock-proof hammer for power lines will be described in detail below with reference to the accompanying drawings.
[0019] like Figure 1 As shown, the present invention provides a shockproof hammer for power lines, including a shockproof hammer body 1, a controller 2, a moving device 3, a balance adjustment device 4, a weight detection sensor 5 and a control system 6, wherein the controller 2 is mounted on the shockproof hammer body 1, the moving device 3 is mounted on the top of the shockproof hammer body 1, the balance adjustment device 4 is mounted on both sides of the shockproof hammer, the shockproof hammer body 1 has a load slot, the weight detection sensor 5 is mounted in the load slot, and the control system 6 is remotely controlled by the controller 2. Under the action of the controller 2, the shockproof hammer adjusts its position on the power line through the moving device 3, and adjusts the balance of the shockproof hammer on the power line through the balance adjustment device 4. The shockproof hammer can also place heavy objects in the load slot of the shockproof hammer body 1 according to actual needs to increase the weight of the shockproof hammer, so that the shockproof hammer can be used for shockproofing of various lines.
[0020] according to Figure 1 As shown, the controller 2 includes a signal detection module, a digital quantity control module and a communication module, the signal detection module is connected to the balance adjustment device 4 and the weight detection sensor 5 through a connecting line, the digital quantity control module is connected to the balance adjustment device 4 and the adjustment device through a connecting line, and the communication module has a communication function and performs remote communication with the control system 6. The controller 2 can control the operation of the balance adjustment device 4, control the adjustment device, move the shockproof hammer on the power line, detect the weight of the heavy object in the shockproof hammer, and perform remote communication with the control system 6.
[0021] according to Figure 1 As shown, the control system 6 has a communication module and an operation panel, wherein the communication module can communicate remotely with the controller 2, and the operation panel can set parameter values. Remote communication is established with the controller 2 through the communication module, so that the parameter values set by the controller 2 are transmitted to the controller 2.
[0022] like Figure 2As shown, the mobile device 3 includes an upper shell 7, a lower shell 8, a rotating motor 9, a rotating wheel 10 and a clamping device 11. The upper shell 7 and the lower shell 8 are connected by a rotating shaft and a fixing buckle. There is a concave hole on the side between the upper shell 7 and the lower shell 8. The rotating motor 9 is installed on the rotating wheel 10. The side of the rotating wheel 10 has a threaded groove, and the threaded groove is fixed on the upper side of the concave hole. The clamping device 11 is installed on the lower side of the concave hole. Through the structure of the upper shell 7 and the lower shell 8, the mobile device 3 can be installed on the power line, and the mobile device 3 can be moved on the power line by the rotating motor 9 and the rotating wheel 10, and the mobile device 3 can be fixed on the power line by the clamping device 11.
[0023] according to Figure 2 As shown, the rotating motor 9 includes a power input port, which is connected to the digital quantity control module of the controller 2 through a connecting line, and the rotating motor 9 is operated by the controller 2.
[0024] according to Figure 2 As shown, the clamping device 11 includes an electromagnetic device and a clamping rod, the clamping rod is installed in the electromagnetic device, the electromagnetic device includes a power input port, and the power input port is connected to the digital control module of the controller 2 through a connecting line. The clamping device 11 is operated by the controller 2.
[0025] according to Figure 1 As shown, the weight detection sensor 5 includes a detection port, which is connected to the signal detection module of the controller 2 through a connecting line. The weight detection sensor 5 can detect the weight of the heavy object in the shock-absorbing hammer body 1 and transmit it to the controller 2.
[0026] like Figure 3 As shown, the balance adjustment device 4 includes a balance detection sensor 12 and two adjustment devices. The two electromagnetic adjustment devices are installed at both ends of the shock-absorbing hammer body 1. The balance detection sensor 12 is installed on the adjustment device and includes a signal detection port. The signal detection port is connected to the signal detection module of the controller 2 through a connecting line. The balance adjustment device 4 detects whether the shock-absorbing hammer body 1 is balanced through the balance detection sensor 12.
[0027] according to Figure 3 As shown, the adjusting device includes an electromagnetic rotating device 13, a rotating rod 14 and a load 15. The electromagnetic rotating device 13 is installed on the shock-proof hammer, one end of the rotating rod 14 is installed in the electromagnetic rotating device 13, and the other end of the rotating rod 14 is equipped with the load 15. The adjusting device can adjust the shock-proof hammer to maintain balance on the power line through the controller 2.
[0028] The working principle of a shockproof hammer for power lines is as follows: the mobile device 3 is installed on the power line through the rotating shaft and the fixing buckle of the upper shell 7 and the lower shell 8, so that the groove between the upper shell 7 and the lower shell 8 is installed. After the installation is completed, heavy objects are placed in the shockproof hammer body 1 to increase the load capacity of the shockproof hammer. The weight detection sensor 5 can detect the weight in the shockproof hammer body 1 and transmit it to the controller 2. The staff sets the value of the weight placed on the controller 2. When the value displayed by the weight detection sensor 5 on the controller 2 exceeds the value of the placed weight, the controller 2 will prompt the staff. The staff establishes remote communication with the controller 2 through the control system 6, sets the operation signal of the mobile device 3 on the control system 6, and transmits it to the controller 2. The mobile device 3 operates the mobile device 3 according to the signal received by the controller 2, so that the mobile device 3 moves on the power line to achieve the effect of adjusting the position. After the position adjustment is completed, the moving device 3 is fixed on the power line by the clamping device 11, and the controller 2 detects whether the shock-absorbing hammer body 1 is balanced on the power line according to the balance detection sensor 12 on the balance adjustment device 4. If it is unbalanced, the shock-absorbing hammer is kept in a balanced state on the power line by running the adjustment device.
[0029] Finally, it should be noted that the above embodiments are only used to illustrate the technical solution of the present invention and are not intended to limit the present invention. A person skilled in the art should understand that the specific implementation of the present invention can be modified or replaced by equivalents, but these modifications or changes are within the scope of protection of the pending claims.
Claims
1. A shock-proof hammer for power lines, characterized in that: It includes a shockproof hammer body, a controller, a moving device, a balance adjustment device, a weight detection sensor and a control system, wherein the controller is installed on the shockproof hammer body, the moving device is installed on the top of the shockproof hammer body, the balance adjustment device is installed on both sides of the shockproof hammer, the shockproof hammer body has a load slot, the weight detection sensor is installed in the load slot, and the control system is remotely controlled with the controller; The moving device comprises an upper shell, a lower shell, a rotating motor, a rotating wheel and a clamping device, wherein the upper shell and the lower shell are connected by a rotating shaft and a fixing buckle, a concave hole is provided on the side between the upper shell and the lower shell, the rotating motor is installed on the rotating wheel, the side of the rotating wheel has a threaded groove, the threaded groove is fixed on the upper side of the concave hole, and the clamping device is installed on the lower side of the concave hole; The moving device is installed on the power line through the rotating shaft and the fixing buckle of the upper shell and the lower shell so that the groove between the upper shell and the lower shell is installed; After the installation is completed, heavy objects are placed in the shock-proof hammer body to increase the load-bearing capacity of the shock-proof hammer. The weight detection sensor can detect the weight inside the shock-proof hammer body and transmit it to the controller; the staff sets the value of the weight placed on the controller, and when the value displayed by the weight detection sensor on the controller exceeds the value of the placed weight, the controller will prompt the staff; the staff establishes remote communication with the controller through the control system, sets the mobile device operation signal on the control system, and transmits it to the controller; the mobile device operates the mobile device according to the signal received by the controller, so that the mobile device moves on the power line to achieve the purpose of adjusting the position; after the position adjustment is completed, the mobile device is fixed on the power line by the clamping device, and the controller detects whether the shock-proof hammer body is balanced on the power line according to the balance detection sensor on the balance adjustment device. If it is unbalanced, the shock-proof hammer is kept in a balanced state on the power line by operating the adjustment device.
2. The anti-vibration hammer for power lines according to claim 1, characterized in that: The controller includes a signal detection module, a digital quantity control module and a communication module. The signal detection module is connected to the balance adjustment device and the weight detection sensor through a connecting line. The digital quantity control module is connected to the balance adjustment device and the adjustment device through a connecting line. The communication module has a communication function and communicates remotely with the control system.
3. The anti-vibration hammer for power lines according to claim 2, characterized in that: The control system has a communication module and an operation panel, wherein the communication module can communicate remotely with the controller, and the operation panel can set parameter values.
4. The anti-vibration hammer for power lines according to claim 3, characterized in that: The rotating motor comprises a power input port, and the power input port is connected to a digital quantity control module of a controller via a connecting line.
5. The anti-vibration hammer for power lines according to claim 3, characterized in that: The clamping device comprises an electromagnetic device and a clamping rod, wherein the clamping rod is installed in the electromagnetic device, and the electromagnetic device comprises a power input port, which is connected to a digital quantity control module of a controller via a connecting line.
6. A shock-proof hammer for power lines according to claim 1 or 2, characterized in that: The weight detection sensor comprises a detection port, and the detection port is connected to a signal detection module of a controller via a connecting line.
7. A shock-proof hammer for power lines according to claim 1 or 2, characterized in that: The balance adjustment device includes a balance detection sensor and two adjustment devices, the two adjustment devices are installed at both ends of the shock-absorbing hammer body, the balance detection sensor is installed on the adjustment device, and includes a signal detection port, and the signal detection port is connected to the signal detection module of the controller through a connecting line.
8. The anti-vibration hammer for power lines according to claim 7, characterized in that: The adjusting device comprises an electromagnetic rotating device, a rotating rod and a load. The electromagnetic rotating device is installed on the shockproof hammer. One end of the rotating rod is installed in the electromagnetic rotating device, and the other end of the rotating rod is equipped with the load.
Citation Information
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